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A N Shatrova

Publications and source records attributed to A N Shatrova.

8 recordsLinked to original sources

[Effect of etoposide and amsacrine on mitotic progression of GM-130 and Hep-2 cell lines. The flow cytometry assay].

It has been shown that inhibitors of topoisomerase II (topo II) etoposide and amsacrine results in accumulation of GM-130 and Hep-2 cells with 4c DNA amount. The differential analysis based on flow cytometry (Zenin et al., 2001) and enabled us to discriminate cells with 4c DNA--G2, M, including metaphase and anaphase cells and cells in pseudo-G1. 1 microM etoposide evoked cell accumulation in G2 phase, while 40 microM etoposide blocked cell proliferation, which was confirmed by a complete absence of both mitotic cells and 4c DNA cell accumulation. GM-130 and Hep-2 cells that were first blocked and then washed from nocodazole, and after that treated with 50 microM etoposide or 20 microM amsacrine, were shown to enter pseudo-G1 with 4c DNA amount per cell. In the presence of nocodazole, 4 and 40 microM amsacrine evoked transition of all mitotic cells to pseudo-G1 within 1 h. 15 or 30 minutes pulse treatments of GM-130 cells with 40 microM amsacrine in the presence of nocodazole, followed by incubation in drug-free medium, resulted in the similar transition of cells to pseudo-G1.

Amsacrine↗

[Flow cytometric analysis of ICRF-193 influence on cell passage through mitosis].

Studying the effect of topoisomerase II (topo II) inhibitors on cell passage through mitosis seems to be important for understanding the role of this enzyme during chromosome condensation and segregation. A flow cytometric assay (Zenin et al., 2001) allowed to determine the mitotic index, and to discriminate between not only cells in G2 and M phases (including metaphase and anaphase cells), but also cells in pseudo-G1 with 4c DNA content. It is shown that topo II catalytic inhibitor ICRF-193 blocks G2-M transition in a lymphoblastoid cell line GM-130. Addition of caffeine to cells abrogated a block of their entering mitosis but not the inhibitor action. Cells entered mitosis, which was proven by the presence of chromosomes in the examined specimen, and, bypassing anaphase, appeared in pseudo-G1 with 4c DNA content. We have found that in the presence of ICRF-193 cells, GM-130 and Hep-2 lines, previously blocked by nocodazole when in mitosis and then washed, pass through metaphase, enter anaphase and leave it to pass to pseudo-G1 with the 4c DNA content. Thus, by inhibiting topo II activity ICRF-193 causes abnormal mitotic transition.

Caffeine↗

[The use of lysolecithin for obtaining a chromosome suspension].

Lysolecithin treatment was used for obtaining isolated metaphase chromosomes from HeLa cells and lymphoblastoid cell lines BOLD and ROM. Chromosomes were stained with Hoechst 33258 and olivomycine. Chromosome quantity in suspension was determined by dual-laser sorter ATC-3000. It is shown that lysolecithin treatment of the cells allows to isolate chromosomes with higher concentration in suspension and less amount of debris in comparison with Triton X-100 treatment. A protocol for chromosome isolation using lysolecithin treatment is suggested.

Cell Fractionation↗

[The physical mapping of human chromosomes. II. The production of unique chromosome-specific DNA fragments using the polymerase chain reaction with oligonucleotide primers to conservative regions of Alu repeats].

Unique DNA fragments localised between Alu-repeats have been produced by PCR. The reaction was carried out with oligonucleotide primers to conservative regions of Alu-repeats. The DNA fragments from different pulls, individual clones, chromosome-specific clonotecs derived from phage lambda, cosmids and individual human chromosomes served as matrixes. The possibilities are discussed of Alu-primer applying in production of exceptional physical features of DNA molecules, suitable for constructing clone couple groups and for direct physical mapping on the DNA of isolated chromosomes, missing the stage of cloning.

Base Sequence↗

[Chromosome fractionation in a saccharose density gradient for subsequent flow sorting].

The human chromosomes were obtained from lymphoblastoid cell line BOLD with normal karyotype, and separated on the basis of their size by velocity sedimentation at 190 g in sucrose gradient. Different chromosomal fractions were stained by applying fluorochromes with different DNA-base specificity: Hoechst 33258 and Olivomycine and were analysed using dual laser cell-sorter ATC-3000 (Brucker). Velocity sedimentation allowed to enrich certain fractions by individual chromosomes and thus speed up the sorting rate from 90 up to 200 chromosomes per second.

Cell Fractionation↗

[The cytolytic function of mononuclear phagocytes. II. Factors that determine the binding and lysis of tumor cells by activated macrophages].

The effects of various modifiers upon the interaction of LPS- and BCG-activated macrophages with cells of mastocytoma P815 have been investigated. The efficiency of binding and lysis of the tumor cells is to a great extent determined by activation of the effector-cells, expression of the trypsin-sensitive receptors on the surface of macrophages, and by the type of target-cells. Introduction into the analytical system (effector-target) of unlabeled tumor cells or membrane preparations obtained from them inhibits substantially both binding and lytic activity of cytotoxic macrophages. If nontransformed cells or their membranes are applied, no significant changes in the investigated processes can be detected. Trypsinization of tumor cells as well as of activated but not resident macrophages modifies considerably the interaction of effectors with targets. The quantity of tumor cells bound with macrophages does not depend on the fact, which of the partners is subject to trypsinization, but it is much less than that of target-cells bound in the control. The incubation of activated macrophages with actinomycin D results in a substantial suppression of their lytic activity, whereas treatment of tumor cells with this inhibitor of protein synthesis leads to a considerable decrease in stability of the targets against lytic activity of the factor activated by effectors. The obtained data reveal the ways of selective binding and effective lysis of transformed targets by activated macrophages.

Animals↗

[A device for sample pretreatment during flow cytometry].

A device for the preliminary treatment of samples immediately prior to flow cytofluorimetric analysis is described. The device is intended for several procedures: (a) mixing of batched sample volumes with the reagent and efficient stirring of the mixture; (b) disintegration of cell aggregates; and (c) disruption of cell membranes to release the cell contents (chromosomes, micronuclei, nuclei etc.). The pretreatment is useful for studying the kinetic parameters of fast cellular processes in the flow, a more correct analysis of the cell cycle and the study of karyotypes of single mitotic cells. The device was called a magnetic microstirrer.

Cell Aggregation↗

[A novel method of chromosome distribution analysis in saccharose density gradient].

The human chromosomes distribution in a sucrose density gradient was studied using a new computer method of the quantitative analysis of flow karyotypes. The dual-parameter flow distributions of human chromosomes fluorescence intensities of the sucrose density gradient fractions were analyzed to obtain the quantity of each chromosome. The chromosomes were found to distribute over sucrose density gradient as follows: 1) fractions with low sucrose density mostly contain chromosomes 1-7, and their quantity is increased between 1.4- to 3.2-fold in comparison with the control unfractionated suspension; 2) medium density fractions are enriched with chromosomes 8-20 up to 2.4-fold; 3) fractions with a high sucrose density mostly contain small chromosomes 21-22 and fragments of broken chromosomes. So the new method of quantitative analysis of flow karyotypes allows one to determine the efficiency of enrichment and the maximally enriched fraction for any chosen chromosome. Maximally enriched fractions maximize the rate of preparative flow sorting of individual chromosomes for research or biotechnology purposes.

Cell Line↗